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Captivate Bio's DMEM, High Glucose is a widely used basal medium for supporting the growth of many different mammalian cells. This formulation contains 4 mM L-glutamine and 4500 mg/L glucose.
Captivate Bio's DMEM/F12 without L-glutamine is a widely used basal medium for supporting the growth of many different mammalian cells. Cells successfully cultured include glial cells, fibroblasts, and human endothelial cells. This formulation contains no L-glutamine.
IWP 4 is a potent inhibitor of Wnt/β-catenin signaling (IC50 = 25 nM). Has minimal effect on Notch and Hedgehog signaling pathways. Induces differentiation of cardiomyocytes from human ESCs and iPSCs.
Captivate Bio's DMEM, High Glucose is a widely used basal medium for supporting the growth of many different mammalian cells. This formulation contains 4500 mg/L glucose and no L-glutamine.
Captivate Bio's Leibovitz's L-15 Medium supports the growth of HEp-2 monkey kidney and primary explants of embryonic and adult human tissue, and a variety of other cells. This formulation is without L-glutamine.
Captivate Bio's DMEM, High Glucose is a widely used basal medium for supporting the growth of many different mammalian cells. This formulation contains 4500 mg/L glucose, no L-glutamine, and no Phenol Red.
StemRegenin 1 or SR1 (GMP-grade) is an antagonist of the aryl hydrocarbon receptor (AHR). SR1 promotes the expansion human hematopoietic stem cells and the generation of progenitor cells. This product is GMP-grade and can be used in cell and gene therapy research applications. Bulk discounts and custom packaging available.
An integrated stress response (ISR) inhibitor that promotes survival of pluripotent stem cells in culture when used in combination with Chroman 1 and Emricasan small molecules in the CEPT cocktail1.
L-685458 is a potent transition state analog (TSA) γ-secretase inhibitor (GSI). L-685458 is used in the research of neural research, Alzheimer’s disease, and various cancers.
SB203580 is a selective ATP-competitive p38 MAPK inhibitor. Enhances the growth of mouse ES cells and enhances differentiation of cardiomyocytes from human ES cells.